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Facial Nerve Regeneration through Progesterone-Loaded Chitosan Prosthesis. A Preliminary Report

机译:通过装载黄体酮的壳聚糖假体修复面神经。初步报告

摘要

Biodegradable nerve guides have represented new treatment alternatives for nerve repairing. They are gradually biodegradable, exert biological effects directly to the injured nerve, and act as drug- or cell-delivery devices. Furthermore, progesterone (PROG) has been demonstrated to promote injured peripheral nerve regeneration. In this study, it was hypothesized that PROG delivered from chitosan prostheses provides better facial nerve regenerative response than chitosan prostheses with no PROG. As there are no reports on the use of the former as nerve-guide material in the regeneration of injured nerves, this is the main objective of the present work. Chitosan prostheses containing PROG were used to bridge 10-mm gaps in rabbit facial nerves. The regenerated nerves were evaluated 45 days after implantation in animals with the use of light microscopy and morphometric analysis. Gas chromatography was used in order to quantify PROG content in prosthesis prior to and after implantation in subcutaneous tissue at different periods of up to 60 days. In addition, the prosthesis walls were evaluated with histological techniques in order to assess their integrity and the surrounding tissue reaction. Chitosan prostheses allowed PROG release during the time needed for nerve regeneration. At 45 days myelinated nerve fibers were observed in both the proximal and distal stumps. This parameter and the N ratio were higher in the progesterone-treated group when compared to that of the vehicle control. Findings indicate that chitosan prostheses were useful in nerve regeneration, acting as a long-lasting PROG delivery device a faster nerve regeneration. © 2003 Wiley Periodicals, Inc.
机译:可生物降解的神经向导代表了神经修复的新治疗选择。它们逐渐可生物降解,直接对受伤的神经发挥生物作用,并充当药物或细胞递送装置。此外,黄体酮(PROG)已被证明可以促进受损的周围神经再生。在这项研究中,假设从壳聚糖假体递送的PROG比没有PROG的壳聚糖假体提供更好的面神经再生反应。由于没有关于在损伤的神经再生中使用前者作为神经引导材料的报道,因此这是当前工作的主要目的。含有PROG的壳聚糖假体可弥合兔子面部神经中10毫米的间隙。植入动物后45天,使用光学显微镜和形态计量学分析评估再生的神经。为了在多达60天的不同时期内植入皮下组织之前和之后,使用气相色谱仪定量假体中的PROG含量。另外,用组织学技术评估假体壁,以评估其完整性和周围组织反应。壳聚糖假体可以在神经再生所需的时间内释放PROG。在第45天,在近端和远端残端均观察到有髓神经纤维。与载体对照相比,孕酮治疗组的该参数和N比值更高。研究结果表明,壳聚糖假体可用于神经再生,可作为持久的PROG传递装置,加快神经再生。 ©2003 Wiley Periodicals,Inc.。

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